638 lines
15 KiB
C
638 lines
15 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/* Copyright 2019 Linaro, Ltd, Rob Herring <robh@kernel.org> */
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/* Copyright 2019 Collabora ltd. */
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/* Copyright 2024-2025 Tomeu Vizoso <tomeu@tomeuvizoso.net> */
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#include <drm/drm_print.h>
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#include <drm/drm_file.h>
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#include <drm/drm_gem.h>
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#include <drm/rocket_accel.h>
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#include <linux/interrupt.h>
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#include <linux/iommu.h>
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#include <linux/platform_device.h>
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#include <linux/pm_runtime.h>
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#include "rocket_core.h"
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#include "rocket_device.h"
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#include "rocket_drv.h"
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#include "rocket_job.h"
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#include "rocket_registers.h"
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#define JOB_TIMEOUT_MS 500
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static struct rocket_job *
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to_rocket_job(struct drm_sched_job *sched_job)
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{
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return container_of(sched_job, struct rocket_job, base);
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}
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static const char *rocket_fence_get_driver_name(struct dma_fence *fence)
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{
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return "rocket";
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}
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static const char *rocket_fence_get_timeline_name(struct dma_fence *fence)
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{
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return "rockchip-npu";
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}
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static const struct dma_fence_ops rocket_fence_ops = {
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.get_driver_name = rocket_fence_get_driver_name,
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.get_timeline_name = rocket_fence_get_timeline_name,
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};
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static struct dma_fence *rocket_fence_create(struct rocket_core *core)
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{
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struct dma_fence *fence;
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fence = kzalloc(sizeof(*fence), GFP_KERNEL);
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if (!fence)
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return ERR_PTR(-ENOMEM);
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dma_fence_init(fence, &rocket_fence_ops, &core->fence_lock,
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core->fence_context, ++core->emit_seqno);
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return fence;
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}
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static int
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rocket_copy_tasks(struct drm_device *dev,
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struct drm_file *file_priv,
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struct drm_rocket_job *job,
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struct rocket_job *rjob)
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{
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int ret = 0;
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if (job->task_struct_size < sizeof(struct drm_rocket_task))
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return -EINVAL;
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rjob->task_count = job->task_count;
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if (!rjob->task_count)
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return 0;
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rjob->tasks = kvmalloc_array(job->task_count, sizeof(*rjob->tasks), GFP_KERNEL);
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if (!rjob->tasks) {
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drm_dbg(dev, "Failed to allocate task array\n");
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return -ENOMEM;
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}
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for (int i = 0; i < rjob->task_count; i++) {
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struct drm_rocket_task task = {0};
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if (copy_from_user(&task,
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u64_to_user_ptr(job->tasks) + i * job->task_struct_size,
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sizeof(task))) {
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drm_dbg(dev, "Failed to copy incoming tasks\n");
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ret = -EFAULT;
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goto fail;
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}
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if (task.regcmd_count == 0) {
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drm_dbg(dev, "regcmd_count field in drm_rocket_task should be > 0.\n");
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ret = -EINVAL;
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goto fail;
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}
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rjob->tasks[i].regcmd = task.regcmd;
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rjob->tasks[i].regcmd_count = task.regcmd_count;
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}
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return 0;
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fail:
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kvfree(rjob->tasks);
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return ret;
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}
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static void rocket_job_hw_submit(struct rocket_core *core, struct rocket_job *job)
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{
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struct rocket_task *task;
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unsigned int extra_bit;
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/* Don't queue the job if a reset is in progress */
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if (atomic_read(&core->reset.pending))
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return;
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/* GO ! */
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task = &job->tasks[job->next_task_idx];
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job->next_task_idx++;
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rocket_pc_writel(core, BASE_ADDRESS, 0x1);
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/* From rknpu, in the TRM this bit is marked as reserved */
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extra_bit = 0x10000000 * core->index;
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rocket_cna_writel(core, S_POINTER, CNA_S_POINTER_POINTER_PP_EN(1) |
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CNA_S_POINTER_EXECUTER_PP_EN(1) |
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CNA_S_POINTER_POINTER_PP_MODE(1) |
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extra_bit);
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rocket_core_writel(core, S_POINTER, CORE_S_POINTER_POINTER_PP_EN(1) |
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CORE_S_POINTER_EXECUTER_PP_EN(1) |
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CORE_S_POINTER_POINTER_PP_MODE(1) |
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extra_bit);
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rocket_pc_writel(core, BASE_ADDRESS, task->regcmd);
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rocket_pc_writel(core, REGISTER_AMOUNTS,
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PC_REGISTER_AMOUNTS_PC_DATA_AMOUNT((task->regcmd_count + 1) / 2 - 1));
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rocket_pc_writel(core, INTERRUPT_MASK, PC_INTERRUPT_MASK_DPU_0 | PC_INTERRUPT_MASK_DPU_1);
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rocket_pc_writel(core, INTERRUPT_CLEAR, PC_INTERRUPT_CLEAR_DPU_0 | PC_INTERRUPT_CLEAR_DPU_1);
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rocket_pc_writel(core, TASK_CON, PC_TASK_CON_RESERVED_0(1) |
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PC_TASK_CON_TASK_COUNT_CLEAR(1) |
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PC_TASK_CON_TASK_NUMBER(1) |
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PC_TASK_CON_TASK_PP_EN(1));
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rocket_pc_writel(core, TASK_DMA_BASE_ADDR, PC_TASK_DMA_BASE_ADDR_DMA_BASE_ADDR(0x0));
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rocket_pc_writel(core, OPERATION_ENABLE, PC_OPERATION_ENABLE_OP_EN(1));
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dev_dbg(core->dev, "Submitted regcmd at 0x%llx to core %d", task->regcmd, core->index);
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}
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static int rocket_acquire_object_fences(struct drm_gem_object **bos,
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int bo_count,
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struct drm_sched_job *job,
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bool is_write)
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{
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int i, ret;
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for (i = 0; i < bo_count; i++) {
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ret = dma_resv_reserve_fences(bos[i]->resv, 1);
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if (ret)
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return ret;
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ret = drm_sched_job_add_implicit_dependencies(job, bos[i],
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is_write);
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if (ret)
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return ret;
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}
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return 0;
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}
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static void rocket_attach_object_fences(struct drm_gem_object **bos,
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int bo_count,
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struct dma_fence *fence)
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{
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int i;
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for (i = 0; i < bo_count; i++)
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dma_resv_add_fence(bos[i]->resv, fence, DMA_RESV_USAGE_WRITE);
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}
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static int rocket_job_push(struct rocket_job *job)
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{
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struct rocket_device *rdev = job->rdev;
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struct drm_gem_object **bos;
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struct ww_acquire_ctx acquire_ctx;
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int ret = 0;
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bos = kvmalloc_array(job->in_bo_count + job->out_bo_count, sizeof(void *),
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GFP_KERNEL);
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memcpy(bos, job->in_bos, job->in_bo_count * sizeof(void *));
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memcpy(&bos[job->in_bo_count], job->out_bos, job->out_bo_count * sizeof(void *));
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ret = drm_gem_lock_reservations(bos, job->in_bo_count + job->out_bo_count, &acquire_ctx);
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if (ret)
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goto err;
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scoped_guard(mutex, &rdev->sched_lock) {
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drm_sched_job_arm(&job->base);
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job->inference_done_fence = dma_fence_get(&job->base.s_fence->finished);
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ret = rocket_acquire_object_fences(job->in_bos, job->in_bo_count, &job->base, false);
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if (ret)
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goto err_unlock;
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ret = rocket_acquire_object_fences(job->out_bos, job->out_bo_count, &job->base, true);
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if (ret)
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goto err_unlock;
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kref_get(&job->refcount); /* put by scheduler job completion */
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drm_sched_entity_push_job(&job->base);
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}
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rocket_attach_object_fences(job->out_bos, job->out_bo_count, job->inference_done_fence);
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err_unlock:
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drm_gem_unlock_reservations(bos, job->in_bo_count + job->out_bo_count, &acquire_ctx);
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err:
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kvfree(bos);
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return ret;
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}
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static void rocket_job_cleanup(struct kref *ref)
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{
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struct rocket_job *job = container_of(ref, struct rocket_job,
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refcount);
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unsigned int i;
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rocket_iommu_domain_put(job->domain);
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dma_fence_put(job->done_fence);
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dma_fence_put(job->inference_done_fence);
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if (job->in_bos) {
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for (i = 0; i < job->in_bo_count; i++)
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drm_gem_object_put(job->in_bos[i]);
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kvfree(job->in_bos);
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}
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if (job->out_bos) {
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for (i = 0; i < job->out_bo_count; i++)
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drm_gem_object_put(job->out_bos[i]);
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kvfree(job->out_bos);
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}
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kvfree(job->tasks);
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kfree(job);
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}
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static void rocket_job_put(struct rocket_job *job)
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{
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kref_put(&job->refcount, rocket_job_cleanup);
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}
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static void rocket_job_free(struct drm_sched_job *sched_job)
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{
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struct rocket_job *job = to_rocket_job(sched_job);
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drm_sched_job_cleanup(sched_job);
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rocket_job_put(job);
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}
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static struct rocket_core *sched_to_core(struct rocket_device *rdev,
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struct drm_gpu_scheduler *sched)
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{
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unsigned int core;
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for (core = 0; core < rdev->num_cores; core++) {
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if (&rdev->cores[core].sched == sched)
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return &rdev->cores[core];
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}
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return NULL;
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}
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static struct dma_fence *rocket_job_run(struct drm_sched_job *sched_job)
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{
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struct rocket_job *job = to_rocket_job(sched_job);
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struct rocket_device *rdev = job->rdev;
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struct rocket_core *core = sched_to_core(rdev, sched_job->sched);
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struct dma_fence *fence = NULL;
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int ret;
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if (unlikely(job->base.s_fence->finished.error))
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return NULL;
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/*
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* Nothing to execute: can happen if the job has finished while
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* we were resetting the NPU.
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*/
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if (job->next_task_idx == job->task_count)
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return NULL;
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fence = rocket_fence_create(core);
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if (IS_ERR(fence))
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return fence;
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if (job->done_fence)
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dma_fence_put(job->done_fence);
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job->done_fence = dma_fence_get(fence);
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ret = pm_runtime_get_sync(core->dev);
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if (ret < 0)
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return fence;
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ret = iommu_attach_group(job->domain->domain, core->iommu_group);
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if (ret < 0)
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return fence;
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scoped_guard(mutex, &core->job_lock) {
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core->in_flight_job = job;
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rocket_job_hw_submit(core, job);
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}
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return fence;
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}
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static void rocket_job_handle_irq(struct rocket_core *core)
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{
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pm_runtime_mark_last_busy(core->dev);
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rocket_pc_writel(core, OPERATION_ENABLE, 0x0);
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rocket_pc_writel(core, INTERRUPT_CLEAR, 0x1ffff);
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scoped_guard(mutex, &core->job_lock)
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if (core->in_flight_job) {
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if (core->in_flight_job->next_task_idx < core->in_flight_job->task_count) {
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rocket_job_hw_submit(core, core->in_flight_job);
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return;
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}
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iommu_detach_group(NULL, iommu_group_get(core->dev));
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dma_fence_signal(core->in_flight_job->done_fence);
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pm_runtime_put_autosuspend(core->dev);
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core->in_flight_job = NULL;
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}
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}
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static void
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rocket_reset(struct rocket_core *core, struct drm_sched_job *bad)
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{
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if (!atomic_read(&core->reset.pending))
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return;
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drm_sched_stop(&core->sched, bad);
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/*
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* Remaining interrupts have been handled, but we might still have
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* stuck jobs. Let's make sure the PM counters stay balanced by
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* manually calling pm_runtime_put_noidle().
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*/
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scoped_guard(mutex, &core->job_lock) {
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if (core->in_flight_job)
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pm_runtime_put_noidle(core->dev);
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iommu_detach_group(NULL, core->iommu_group);
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core->in_flight_job = NULL;
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}
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/* Proceed with reset now. */
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rocket_core_reset(core);
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/* NPU has been reset, we can clear the reset pending bit. */
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atomic_set(&core->reset.pending, 0);
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/* Restart the scheduler */
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drm_sched_start(&core->sched, 0);
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}
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static enum drm_gpu_sched_stat rocket_job_timedout(struct drm_sched_job *sched_job)
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{
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struct rocket_job *job = to_rocket_job(sched_job);
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struct rocket_device *rdev = job->rdev;
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struct rocket_core *core = sched_to_core(rdev, sched_job->sched);
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dev_err(core->dev, "NPU job timed out");
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atomic_set(&core->reset.pending, 1);
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rocket_reset(core, sched_job);
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return DRM_GPU_SCHED_STAT_RESET;
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}
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static void rocket_reset_work(struct work_struct *work)
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{
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struct rocket_core *core;
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core = container_of(work, struct rocket_core, reset.work);
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rocket_reset(core, NULL);
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}
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static const struct drm_sched_backend_ops rocket_sched_ops = {
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.run_job = rocket_job_run,
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.timedout_job = rocket_job_timedout,
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.free_job = rocket_job_free
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};
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static irqreturn_t rocket_job_irq_handler_thread(int irq, void *data)
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{
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struct rocket_core *core = data;
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rocket_job_handle_irq(core);
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return IRQ_HANDLED;
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}
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static irqreturn_t rocket_job_irq_handler(int irq, void *data)
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{
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struct rocket_core *core = data;
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u32 raw_status = rocket_pc_readl(core, INTERRUPT_RAW_STATUS);
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WARN_ON(raw_status & PC_INTERRUPT_RAW_STATUS_DMA_READ_ERROR);
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WARN_ON(raw_status & PC_INTERRUPT_RAW_STATUS_DMA_WRITE_ERROR);
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if (!(raw_status & PC_INTERRUPT_RAW_STATUS_DPU_0 ||
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raw_status & PC_INTERRUPT_RAW_STATUS_DPU_1))
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return IRQ_NONE;
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rocket_pc_writel(core, INTERRUPT_MASK, 0x0);
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return IRQ_WAKE_THREAD;
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}
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int rocket_job_init(struct rocket_core *core)
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{
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struct drm_sched_init_args args = {
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.ops = &rocket_sched_ops,
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.num_rqs = DRM_SCHED_PRIORITY_COUNT,
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.credit_limit = 1,
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.timeout = msecs_to_jiffies(JOB_TIMEOUT_MS),
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.name = dev_name(core->dev),
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.dev = core->dev,
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};
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int ret;
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INIT_WORK(&core->reset.work, rocket_reset_work);
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spin_lock_init(&core->fence_lock);
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mutex_init(&core->job_lock);
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core->irq = platform_get_irq(to_platform_device(core->dev), 0);
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if (core->irq < 0)
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return core->irq;
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ret = devm_request_threaded_irq(core->dev, core->irq,
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rocket_job_irq_handler,
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rocket_job_irq_handler_thread,
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IRQF_SHARED, dev_name(core->dev),
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core);
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if (ret) {
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dev_err(core->dev, "failed to request job irq");
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return ret;
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}
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core->reset.wq = alloc_ordered_workqueue("rocket-reset-%d", 0, core->index);
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if (!core->reset.wq)
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return -ENOMEM;
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core->fence_context = dma_fence_context_alloc(1);
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args.timeout_wq = core->reset.wq;
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ret = drm_sched_init(&core->sched, &args);
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if (ret) {
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dev_err(core->dev, "Failed to create scheduler: %d.", ret);
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goto err_sched;
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}
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return 0;
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err_sched:
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drm_sched_fini(&core->sched);
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destroy_workqueue(core->reset.wq);
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return ret;
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}
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void rocket_job_fini(struct rocket_core *core)
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{
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drm_sched_fini(&core->sched);
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cancel_work_sync(&core->reset.work);
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destroy_workqueue(core->reset.wq);
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}
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int rocket_job_open(struct rocket_file_priv *rocket_priv)
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{
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struct rocket_device *rdev = rocket_priv->rdev;
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struct drm_gpu_scheduler **scheds = kmalloc_array(rdev->num_cores,
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sizeof(*scheds),
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GFP_KERNEL);
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unsigned int core;
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int ret;
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for (core = 0; core < rdev->num_cores; core++)
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scheds[core] = &rdev->cores[core].sched;
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ret = drm_sched_entity_init(&rocket_priv->sched_entity,
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DRM_SCHED_PRIORITY_NORMAL,
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scheds,
|
|
rdev->num_cores, NULL);
|
|
if (WARN_ON(ret))
|
|
return ret;
|
|
|
|
return 0;
|
|
}
|
|
|
|
void rocket_job_close(struct rocket_file_priv *rocket_priv)
|
|
{
|
|
struct drm_sched_entity *entity = &rocket_priv->sched_entity;
|
|
|
|
kfree(entity->sched_list);
|
|
drm_sched_entity_destroy(entity);
|
|
}
|
|
|
|
int rocket_job_is_idle(struct rocket_core *core)
|
|
{
|
|
/* If there are any jobs in this HW queue, we're not idle */
|
|
if (atomic_read(&core->sched.credit_count))
|
|
return false;
|
|
|
|
return true;
|
|
}
|
|
|
|
static int rocket_ioctl_submit_job(struct drm_device *dev, struct drm_file *file,
|
|
struct drm_rocket_job *job)
|
|
{
|
|
struct rocket_device *rdev = to_rocket_device(dev);
|
|
struct rocket_file_priv *file_priv = file->driver_priv;
|
|
struct rocket_job *rjob = NULL;
|
|
int ret = 0;
|
|
|
|
if (job->task_count == 0)
|
|
return -EINVAL;
|
|
|
|
rjob = kzalloc(sizeof(*rjob), GFP_KERNEL);
|
|
if (!rjob)
|
|
return -ENOMEM;
|
|
|
|
kref_init(&rjob->refcount);
|
|
|
|
rjob->rdev = rdev;
|
|
|
|
ret = drm_sched_job_init(&rjob->base,
|
|
&file_priv->sched_entity,
|
|
1, NULL, file->client_id);
|
|
if (ret)
|
|
goto out_put_job;
|
|
|
|
ret = rocket_copy_tasks(dev, file, job, rjob);
|
|
if (ret)
|
|
goto out_cleanup_job;
|
|
|
|
ret = drm_gem_objects_lookup(file, u64_to_user_ptr(job->in_bo_handles),
|
|
job->in_bo_handle_count, &rjob->in_bos);
|
|
if (ret)
|
|
goto out_cleanup_job;
|
|
|
|
rjob->in_bo_count = job->in_bo_handle_count;
|
|
|
|
ret = drm_gem_objects_lookup(file, u64_to_user_ptr(job->out_bo_handles),
|
|
job->out_bo_handle_count, &rjob->out_bos);
|
|
if (ret)
|
|
goto out_cleanup_job;
|
|
|
|
rjob->out_bo_count = job->out_bo_handle_count;
|
|
|
|
rjob->domain = rocket_iommu_domain_get(file_priv);
|
|
|
|
ret = rocket_job_push(rjob);
|
|
if (ret)
|
|
goto out_cleanup_job;
|
|
|
|
out_cleanup_job:
|
|
if (ret)
|
|
drm_sched_job_cleanup(&rjob->base);
|
|
out_put_job:
|
|
rocket_job_put(rjob);
|
|
|
|
return ret;
|
|
}
|
|
|
|
int rocket_ioctl_submit(struct drm_device *dev, void *data, struct drm_file *file)
|
|
{
|
|
struct drm_rocket_submit *args = data;
|
|
struct drm_rocket_job *jobs;
|
|
int ret = 0;
|
|
unsigned int i = 0;
|
|
|
|
if (args->job_count == 0)
|
|
return 0;
|
|
|
|
if (args->job_struct_size < sizeof(struct drm_rocket_job)) {
|
|
drm_dbg(dev, "job_struct_size field in drm_rocket_submit struct is too small.\n");
|
|
return -EINVAL;
|
|
}
|
|
|
|
if (args->reserved != 0) {
|
|
drm_dbg(dev, "Reserved field in drm_rocket_submit struct should be 0.\n");
|
|
return -EINVAL;
|
|
}
|
|
|
|
jobs = kvmalloc_array(args->job_count, sizeof(*jobs), GFP_KERNEL);
|
|
if (!jobs) {
|
|
drm_dbg(dev, "Failed to allocate incoming job array\n");
|
|
return -ENOMEM;
|
|
}
|
|
|
|
for (i = 0; i < args->job_count; i++) {
|
|
if (copy_from_user(&jobs[i],
|
|
u64_to_user_ptr(args->jobs) + i * args->job_struct_size,
|
|
sizeof(*jobs))) {
|
|
ret = -EFAULT;
|
|
drm_dbg(dev, "Failed to copy incoming job array\n");
|
|
goto exit;
|
|
}
|
|
}
|
|
|
|
|
|
for (i = 0; i < args->job_count; i++)
|
|
rocket_ioctl_submit_job(dev, file, &jobs[i]);
|
|
|
|
exit:
|
|
kvfree(jobs);
|
|
|
|
return ret;
|
|
}
|